mirror of
https://github.com/mozilla/gecko-dev.git
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302 lines
8.4 KiB
C++
302 lines
8.4 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*-
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*
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* The contents of this file are subject to the Netscape Public
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* License Version 1.1 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at http://www.mozilla.org/NPL/
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*
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* Software distributed under the License is distributed on an "AS
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* IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
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* implied. See the License for the specific language governing
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* rights and limitations under the License.
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*
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* The Original Code is mozilla.org code.
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*
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* The Initial Developer of the Original Code is Netscape
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* Communications Corporation. Portions created by Netscape are
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* Copyright (C) 1998 Netscape Communications Corporation. All
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* Rights Reserved.
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*
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* Contributor(s):
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*/
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#include "nsAutoLock.h"
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#ifdef DEBUG
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#include "plhash.h"
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#include "prprf.h"
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#include "prlock.h"
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#include "prthread.h"
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#include "nsDebug.h"
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#include "nsVector.h"
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static PRUintn LockStackTPI = (PRUintn)-1;
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static PLHashTable* OrderTable = 0;
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static PRLock* OrderTableLock = 0;
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static const char* LockTypeNames[] = {"Lock", "Monitor", "CMonitor"};
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struct nsNamedVector : public nsVector {
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const char* mName;
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nsNamedVector(const char* name = 0, PRUint32 initialSize = 0)
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: nsVector(initialSize),
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mName(name)
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{
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}
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};
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PR_STATIC_CALLBACK(PRIntn)
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_purge_one(PLHashEntry* he, PRIntn cnt, void* arg)
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{
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nsNamedVector* vec = (nsNamedVector*) he->value;
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if (he->key == arg) {
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he->value = 0;
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delete vec;
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return HT_ENUMERATE_REMOVE;
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}
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for (PRUint32 i = 0, n = vec->GetSize(); i < n; i++) {
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if (vec->Get(i) == arg) {
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vec->Remove(i);
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break;
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}
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}
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return HT_ENUMERATE_NEXT;
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}
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PR_STATIC_CALLBACK(void)
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OnMonitorRecycle(void* addr)
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{
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PR_Lock(OrderTableLock);
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PL_HashTableEnumerateEntries(OrderTable, _purge_one, addr);
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PR_Unlock(OrderTableLock);
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}
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PR_STATIC_CALLBACK(PLHashNumber)
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_hash_pointer(const void* key)
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{
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return PLHashNumber(key) >> 2;
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}
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// Must be single-threaded here, early in primordial thread.
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static void InitAutoLockStatics()
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{
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(void) PR_NewThreadPrivateIndex(&LockStackTPI, 0);
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OrderTable = PL_NewHashTable(64, _hash_pointer,
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PL_CompareValues, PL_CompareValues,
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0, 0);
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if (OrderTable && !(OrderTableLock = PR_NewLock())) {
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PL_HashTableDestroy(OrderTable);
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OrderTable = 0;
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}
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PR_CSetOnMonitorRecycle(OnMonitorRecycle);
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}
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PR_STATIC_CALLBACK(PRIntn)
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_purge_all(PLHashEntry* he, PRIntn cnt, void* arg)
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{
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nsNamedVector* vec = (nsNamedVector*) he->value;
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he->value = 0;
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delete vec;
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return HT_ENUMERATE_REMOVE;
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}
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void _FreeAutoLockStatics()
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{
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PLHashTable* table = OrderTable;
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if (!table) return;
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// Called at shutdown, so we don't need to lock.
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PR_CSetOnMonitorRecycle(0);
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PR_DestroyLock(OrderTableLock);
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OrderTableLock = 0;
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PL_HashTableEnumerateEntries(table, _purge_all, 0);
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PL_HashTableDestroy(table);
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OrderTable = 0;
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}
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static nsNamedVector* GetVector(PLHashTable* table, const void* key)
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{
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PLHashNumber hash = _hash_pointer(key);
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PLHashEntry** hep = PL_HashTableRawLookup(table, hash, key);
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PLHashEntry* he = *hep;
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if (he)
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return (nsNamedVector*) he->value;
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nsNamedVector* vec = new nsNamedVector();
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if (vec)
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PL_HashTableRawAdd(table, hep, hash, key, vec);
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return vec;
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}
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// We maintain an acyclic graph in order table, so recursion can't diverge
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static PRBool Reachable(PLHashTable* table, const void* goal, const void* start)
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{
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PR_ASSERT(goal);
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PR_ASSERT(start);
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nsNamedVector* vec = GetVector(table, start);
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for (PRUint32 i = 0, n = vec->GetSize(); i < n; i++) {
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void* addr = vec->Get(i);
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if (addr == goal || Reachable(table, goal, addr))
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return PR_TRUE;
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}
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return PR_FALSE;
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}
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static PRBool WellOrdered(const void* addr1, const void* addr2,
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nsNamedVector** vec1p, nsNamedVector** vec2p)
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{
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PRBool rv = PR_TRUE;
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PLHashTable* table = OrderTable;
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if (!table) return rv;
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PR_Lock(OrderTableLock);
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PRUint32 i, n;
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// Check whether we've already asserted (addr1 < addr2).
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nsNamedVector* vec1 = GetVector(table, addr1);
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if (vec1) {
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for (i = 0, n = vec1->GetSize(); i < n; i++)
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if (vec1->Get(i) == addr2)
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break;
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if (i == n) {
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// Now check for (addr2 < addr1) and return false if so.
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nsNamedVector* vec2 = GetVector(table, addr2);
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if (vec2) {
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for (i = 0, n = vec2->GetSize(); i < n; i++) {
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void* addri = vec2->Get(i);
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PR_ASSERT(addri);
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if (addri == addr1 || Reachable(table, addr1, addri)) {
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*vec1p = vec1;
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*vec2p = vec2;
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rv = PR_FALSE;
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break;
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}
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}
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if (rv) {
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// Assert (addr1 < addr2) into the order table.
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// XXX fix plvector/nsVector to use const void*
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vec1->Add((void*) addr2);
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}
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}
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}
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}
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PR_Unlock(OrderTableLock);
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return rv;
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}
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nsAutoLockBase::nsAutoLockBase(void* addr, nsAutoLockType type)
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{
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if (LockStackTPI == PRUintn(-1))
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InitAutoLockStatics();
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nsAutoLockBase* stackTop =
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(nsAutoLockBase*) PR_GetThreadPrivate(LockStackTPI);
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if (stackTop) {
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if (stackTop->mAddr == addr) {
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// Ignore reentry: it's legal for monitors, and NSPR will assert
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// if you reenter a PRLock.
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} else {
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nsNamedVector* vec1;
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nsNamedVector* vec2;
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if (!WellOrdered(stackTop->mAddr, addr, &vec1, &vec2)) {
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char buf[128];
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PR_snprintf(buf, sizeof buf,
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"potential deadlock between %s%s@%p and %s%s@%p",
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vec1->mName ? vec1->mName : "",
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LockTypeNames[stackTop->mType],
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stackTop->mAddr,
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vec2->mName ? vec2->mName : "",
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LockTypeNames[type],
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addr);
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NS_ERROR(buf);
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}
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}
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}
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mAddr = addr;
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mDown = stackTop;
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mType = type;
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(void) PR_SetThreadPrivate(LockStackTPI, this);
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}
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nsAutoLockBase::~nsAutoLockBase()
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{
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(void) PR_SetThreadPrivate(LockStackTPI, mDown);
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}
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#endif /* DEBUG */
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PRMonitor* nsAutoMonitor::NewMonitor(const char* name)
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{
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PRMonitor* mon = PR_NewMonitor();
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#ifdef DEBUG
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if (mon && OrderTable) {
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nsNamedVector* value = new nsNamedVector(name);
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if (value) {
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PR_Lock(OrderTableLock);
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PL_HashTableAdd(OrderTable, mon, value);
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PR_Unlock(OrderTableLock);
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}
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}
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#endif
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return mon;
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}
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void nsAutoMonitor::DestroyMonitor(PRMonitor* mon)
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{
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#ifdef DEBUG
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if (OrderTable)
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OnMonitorRecycle(mon);
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#endif
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PR_DestroyMonitor(mon);
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}
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void nsAutoMonitor::Enter()
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{
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#ifdef DEBUG
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nsAutoLockBase* stackTop =
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(nsAutoLockBase*) PR_GetThreadPrivate(LockStackTPI);
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NS_ASSERTION(stackTop == mDown, "non-LIFO nsAutoMonitor::Enter");
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mDown = stackTop;
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(void) PR_SetThreadPrivate(LockStackTPI, this);
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#endif
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PR_EnterMonitor(mMonitor);
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}
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void nsAutoMonitor::Exit()
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{
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#ifdef DEBUG
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(void) PR_SetThreadPrivate(LockStackTPI, mDown);
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#endif
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PRStatus status = PR_ExitMonitor(mMonitor);
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NS_ASSERTION(status == PR_SUCCESS, "PR_ExitMonitor failed");
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}
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// XXX we don't worry about cached monitors being destroyed behind our back.
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// XXX current NSPR (mozilla/nsprpub/pr/src/threads/prcmon.c) never destroys
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// XXX a cached monitor! potential resource pig in conjunction with necko...
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void nsAutoCMonitor::Enter()
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{
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#ifdef DEBUG
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nsAutoLockBase* stackTop =
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(nsAutoLockBase*) PR_GetThreadPrivate(LockStackTPI);
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NS_ASSERTION(stackTop == mDown, "non-LIFO nsAutoCMonitor::Enter");
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mDown = stackTop;
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(void) PR_SetThreadPrivate(LockStackTPI, this);
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#endif
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PR_CEnterMonitor(mLockObject);
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}
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void nsAutoCMonitor::Exit()
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{
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#ifdef DEBUG
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(void) PR_SetThreadPrivate(LockStackTPI, mDown);
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#endif
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PRStatus status = PR_CExitMonitor(mLockObject);
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NS_ASSERTION(status == PR_SUCCESS, "PR_CExitMonitor failed");
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}
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